MXenes公司
密度泛函理论
分解水
光催化
材料科学
杰纳斯
吉布斯自由能
氢
氢燃料
带隙
光催化分解水
可再生能源
辐照
化学工程
电子波段
制氢
析氧
电子结构
能量转换效率
氧气
能量转换
化学物理
GSM演进的增强数据速率
混合功能
光电子学
光化学
化学
催化作用
电子能带结构
可见光谱
无机化学
石墨烯
清洁能源
高效能源利用
热力学自由能
物理化学
作者
Mingzhu Liu,Tengfei Wang,Xiaohong Li,Xuehai Ju
摘要
The electronic properties, effective masses, and photocatalytic performances for water splitting of Sc2CT2 and Janus Sc2CXT (X, T = F, O, H, and OH) MXenes were systematically investigated using density functional theory (DFT). Our calculations show that Sc2CT2 (T = F, O, H, and OH) and Sc2CXT (X, T = F, H, and OH) have band gaps from 0.782 to 3.000 eV. Sc2CO2 satisfies thermodynamic requirements for water splitting at pH 0 and 14, but its low solar-to-hydrogen (STH) efficiency (<10%) limits its practical application. In contrast, Sc2CF2, Sc2CH2 and Sc2CHF demonstrate suitable band edge alignments and enhanced STH efficiencies at pH 7 and 14, with Sc2CH2 achieving a notable 18.34% STH efficiency at pH 14. Gibbs free energy calculations indicate that light irradiation enables Sc2CF2, Sc2CH2 and Sc2CHF to catalyze spontaneous hydrogen and oxygen evolution. These combined properties make Sc2C-based MXenes promising photocatalysts for renewable fuel generation.
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